Nine multiparous cows averaging 93±13 days in milk production (DIM) were used in a triple 3×3 Latin square design to determine the effects of feeding them whole roasted flaxseed, cracked roasted soybean and fresh alfalfa in the diet on milk production, milk fatty acid profiles and the digestibility of nutrients. Each experimental period lasted 30 d and a sample collection was performed during the last 7 d. The cows were fed on the control basal diet (CON) or diets containing whole roasted flaxseed (FLA) or cracked roasted soybean (SOY). All diets were fed as a total mixed ration (TMR) and had similar concentrations of crude protein (CP), Net Energy Lactation (NEL), acid detergent fibre (ADF) and neutral detergent fibre (NDF). The dry matter intake (DMI) was not significantly different (P>0.05), but tended to increase in FLA and SOY diets compared with the control (P>0.05). Cows in all treatments had a similar milk yield, although 4% fat corrected milk (FCM) yield was higher on the FLA and SOY diets than on the CON diet. Milk fat percentage (3.45%) increased in the FLA diet compared with the control (3.31%) and SOY diets (3.39%). Milk protein percentages were similar among the diets (P>0.05). There were similar digestibilities of DM, CP and ADF among the treatments and lower digestibilities of NDF and ether extract in the SOY diet compared with the CON diet. Feeding various oilseeds significantly increased the concentrations of C18∶1, C18∶3 and conjugated linoleic acid (CLA). The FLA diet decreased the ratio of omega-6 to omega-3 fatty-acids in the milk, which would improve the nutritive value of the milk.
Corresponding Author(s):
LI Jianguo,Email:jgli@hebau.edu.cn
引用本文:
. Effect of oilseeds rich in linoleic and linolenic acids on milk production and milk fatty acid composition in dairy cows[J]. Frontiers of Agriculture in China, 2009, 3(3): 311-318.
Yanxia GAO, Tao SUN, Jianguo LI. Effect of oilseeds rich in linoleic and linolenic acids on milk production and milk fatty acid composition in dairy cows. Front Agric Chin, 2009, 3(3): 311-318.
AbuGhazaleh A, Schingoethe D J, Hippen A R (2002). Feeding fish meal and extruded soybeans enhances the conjugated linoleic acid (CLA) content of milk. J Dairy Sci , 85: 624-631
2
AOAC (1990). Official Methods of Analysis. 15th ed. Arlington, VA: Association of Official Analytical Chemists International
3
Bauman D E, Corl B A, Baumgard L H, Griinari J M (2001). Conjugated linoleic acid (CLA) and the dairy cow. In: Garnsworthy P C, Wiseman J, eds. Recent Advances in Animal Nutrition-2001 . Nottingham: Nottingham University Press, 221-250
4
Casper D P, Schingoethe D J, Eisenbeisz W A (1990). Response of early lactation cows to diets that vary in ruminal degradability of carbohydrates and amount of fat. J Dairy Sci , 73: 425-444
5
Chouinard P Y, Le’vesque J, Girard V, Brisson G J (1997). Dietary soybeans extruded at different temperatures: Milk composition and in situ fatty acid reactions. J Dairy Sci , 80: 2913-2924
6
Dhiman T R, Anand G R, Satter L D, Pariza M W (1999b). Conjugated linoleic acid content of milk from cows fed different diets. J Dairy Sci , 82: 2146-2156
7
Dhiman T R, Helmink E D, McMahon D J, Fife R L, Pariza M W (1999a). Conjugated linoleic acid content of milk and cheese from cows fed extruded oilseeds. J Dairy Sci , 82: 412-419
8
Dhiman T R, Satter L D, Pariza M W, Galli M P, Albridht K, Tolosa M X (2000). Conjugated linoleic acid (CLA) content of milk from cows offered diets rich in linoleic and linolenic acid. J Dairy Sci , 83: 1016-1027 doi: 10.1002/jsfa.2740690116
9
Dhiman T R, Zanten K V, Satter L D (1995). Effect of dietary fat source on fatty acid composition of cow’s milk. J Sci Food Agric , 69: 101-107
10
French P, Stanton C, Lawless F, O’Riordan E G, Monahan F J, Caffrey P J, Moloney A P (2000). Fatty acid composition, including conjugated linoleic acid, of intramuscular fat from steers offered grazed grass, grass silage, or concentrate-based diets. J Anim Sci , 78: 2849-2855
11
Grummer R R (1991). Effect of feed on the composition of milk fat. J Dairy Sci , 74: 3244-3257
12
Huth P J, DiRienzo D B, Miller G D (2006). Major scientific advances with dairy foods in nutrition and health. J Dairy Sci , 89: 1207-1221
13
Kelly M L, Kolver E S, Bauman D E, Van Amburgh M E, Muller L D (1998). Effect of intake of pasture on concentrations of conjugated linoleic acid in milk of lactating cows. J Dairy Sci , 81: 1630-1636
14
Kennelly J J (1996). The fatty acid composition of milk fat as influenced by feeding oilseeds. Anim Feed Sci Technol , 60: 137-152 doi: 10.1016/0377-8401(96)00973-X
15
Kepler C R, Tove S B (1967). Biohydrogenation of unsaturated fatty acids. J Biol Chem , 242: 5686-5692
16
Kim Y K, Schingoethe D J, Casper D P, Ludens F C (1993). Supplemental dietary fat from extruded soybeans and calcium soaps of fatty acids for lactating dairy cows. J Dairy Sci , 76: 197-204
17
Mohamed O E, Satter L D, Grummer R R, Ehle F R (1988). Influence of dietary cottonseed and soybean on milk production and composition. J Dairy Sci , 71: 2677-2688
18
Mustafa A F, Chouinard P Y, Christensen D A (2003). Effects of feeding micronised flaxseed on yield and composition of milk from Holstein cows. J Sci Food Agric , 83: 920-926 doi: 10.1002/jsfa.1430
19
Mustafa A F, McKinnon J J, Christensen D A, He T (2002). Effects of micronization of flaxseed on nutrient disappearance in the gastrointestinal tract of steers. Anim Feed Sci Techno , 95: 123-132 doi: 10.1016/S0377-8401(01)00337-6
20
National Research Council(NRC) (2001). Nutrient Requirements of Dairy Cattle . 7th ed. Washington D C: National Acacemy Press
21
Ney D M (1991). Potential for enhancing the nutritional properties of milk fat. J Dairy Sci , 74: 4002-4012
22
Palmquist D L, Jenkins T C (1980). Fat in lactation rations: A review. J Dairy Sci , 63: 1-14
23
Petit H V (2002). Digestion, milk production, milk composition, and blood composition of dairy cows fed whole flaxseed. J Dairy Sci , 85: 1482-1490
24
Petit H V (2003). Digestion, milk production, milk composition, and blood composition of dairy cows fed formaldehyde treated flaxseed or sunflower seed. J Dairy Sci , 86: 2637-2646
25
SAS User’s Guide: Statistics, Version 8 Edition (1999). Cary (NC): SAS Inst, Inc
26
Scott T A, Combs D K, Grummer R R (1991). Effects of roasting, extrusion, and particle size on the feeding value of soybeans for dairy cows. J Dairy Sci , 74: 2555-2565
27
Selner D R, Schultz L H (1980). Effects of feeding oleic acid or hydrogenated vegetable oils to lactating cows. J Dairy Sci , 63: 1235-1241
28
Simopoulos A P (2001). n-3-fatty acids and human health, Defining strategies for public policy. Lipids , 36(Suppl 1): S83-89 doi: 10.1007/s11745-001-0687-7
29
Sol Morales M, Palmquist D L, Weiss W P (2000). Effects of fat source and copper on unsaturation of blood and milk triacylglycerol fatty acids in Holstein and Jersey cows. J Dairy Sci , 83: 2105-2111
30
Stegeman G A, Casper D P, Schingoethe D J, Baer R J (1992). Lactational responses of dairy cows fed unsaturated dietary fat and receiving bovine somatotropin. J Dairy Sci , 75: 1936-1945
31
Sukhija P S, Palmquist D L (1988). Rapid method for determination of total fatty acid content and composition of feedstuffs and feces. J Agric Food Chem , 36: 1202-1206 doi: 10.1021/jf00084a019
32
Tice E M, Eastridge M L, Firkins J L (1994). Raw soybeans and roasted soybeans of different particle sizes. 2. Fatty acid utilization by lactating cows. J Dairy Sci , 77: 166-180
33
Van Soest P J, Robertson J B, Lewis B A (1991). Methods for dietary fiber, neutral detergent fiber, and non-starch polysaccharides in relation to animal nutrition. J Dairy Sci , 74: 3583-3597
34
Wright T, McBride B, Holub B (1998). Docosahexaenoic acid enriched milk. World Rev Nutr Diet , 83: 160-165 doi: 10.1159/000059660